Corrosivity of KCl(g) at temperatures above its dew point - Initial stages of the high temperature corrosion of alloy Sanicro 28 at 600 degrees C
Journal article, 2005

The influence of gaseous KCl on the high temperature oxidation of alloy Sanicro 28 (27Cr31Ni) at 600 degrees C in 5% O-2 (N-2 in balance) is reported. The samples were exposed isothermally in flowing P as, the dew point of KCl being 590 degrees C corresponding to a partial pressure of KCl of about 2(.)10(-6) atm. The exposure time was 24, 72 and 168 hours. The samples were investigated by gravimetry, grazing incidence XRD, SEM/EDX and AES. The results show that the oxidation of Sanicro 28 at 600 degrees C is accelerated by KCl(g) at metal temperatures above the dew point of the salt. KCl(g) reacts with the protective chromium rich oxide ((Fe1-xCrx)(2)O-3) forming K2CrO4. The resulting chromium depletion of the oxide gives an increasing oxidation rate but does not trigger "breakaway" corrosion. The distribution of potassium chromate on the sample surface is strongly flow-dependent, showing that the rate of formation of potassium chromate is limited by the rate of transport of KCl(g) to the surface. No evidence for chlorine was found on the corroded samples by AES profiling or EDX.

KCl(g)

chromia-forming steels

chromate formation

Sanicro 28

alkali-induced high temperature corrosion

Author

Carolina Pettersson

Chalmers, Chemical and Biological Engineering, Environmental Inorganic Chemistry

Jan-Erik Svensson

Chalmers, Chemical and Biological Engineering, Environmental Inorganic Chemistry

Lars-Gunnar Johansson

Chalmers, Chemical and Biological Engineering, Environmental Inorganic Chemistry

Materials Science Forum

0255-5476 (ISSN) 16629752 (eISSN)

Vol. 522-523 539-546

Subject Categories

Chemical Sciences

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Created

10/8/2017